Please wait a minute...

中国生物工程杂志

CHINA BIOTECHNOLOGY
中国生物工程杂志  2014, Vol. 34 Issue (06): 110-116    DOI: 10.13523/j.cb.20140616
专利     
跨国公司生物技术知识产权保护策略分析——以棉花转化体MON531为例
宋敏, 刘娜, 任欣欣, 卢垚
中国农业科学院农业资源与农业区划研究所/中国农业科学院农业知识产权研究中心 北京 100081
Analysis of Intellectual Property Protection Strategy of Transnational Biotechnology Corporation——Taking MON531 of Cotton Event for Example
SONG Min, LIU Na, REN Xin-xin, LU Yao
Institute of Agricultural Resources and Regional Planning, CAAS/China Center for Intellectual Property, CAAS, Beijing 100081, China
 全文: PDF(677 KB)   HTML
摘要:

近年来,转基因棉花种植面积在多个国家得到了快速增长。为深入研究转基因抗虫棉花的技术体系和知识产权保护状况,现以棉花转化体MON531为例研究跨国生物公司的知识产权保护策略。结果显示,目前MON531转化体涉及3件处于有效保护期限内的专利,并在多个国家受到保护,实现了从功能基因及调控元件到最终商业化品种的全方位有效保护。申请人还通过申请植物品种权对下游的品种进行保护,美国有19件品种获得授权,在中国仅有1件相关申请处于审查中。对棉花转化体MON531技术体系的知识产权保护策略的研究,可以为我国研发转基因作物并采取知识产权保护提供有利的借鉴。

关键词: 跨国公司转基因MON531知识产权保护策略    
Abstract:

In the past years, the planting area of the transgenic cotton has a rapid growth in many countries. For further study on technology systems and intellectual property protection of transgenic insect-resistant cotton, the intellectual property strategy of transnational biotechnology Corporation has been studied——taking cotton event MON531(Genuity Bloogard TM) for example. The results showed that in the field of the transgenic cotton MON531, there are three valid patents in multiple countries, which made an effective and overall protection of the main functional gene, regulatory elements and the commercial varieties. And for the plant variety rights, nineteen plant varieties have been authorized in America, while only one related application has been examined in China. The strategy research of intellectual property protection related the cotton event MON531 can be used for reference for making our development of genetically modified crops and intellectual property protection.

Key words: Transnational Corporation    Transgenic    MON531    Intellectual Property    Protection Strategy
收稿日期: 2013-09-29 出版日期: 2014-06-25
ZTFLH:  Q819  
基金资助:

转基因植物新材料的育种价值评估项目(2013ZX08010005)资助项目

通讯作者: 宋敏     E-mail: songmin@caas.cn
服务  
把本文推荐给朋友
加入引用管理器
E-mail Alert
RSS
作者相关文章  

引用本文:

宋敏, 刘娜, 任欣欣, 卢垚. 跨国公司生物技术知识产权保护策略分析——以棉花转化体MON531为例[J]. 中国生物工程杂志, 2014, 34(06): 110-116.

SONG Min, LIU Na, REN Xin-xin, LU Yao. Analysis of Intellectual Property Protection Strategy of Transnational Biotechnology Corporation——Taking MON531 of Cotton Event for Example. China Biotechnology, 2014, 34(06): 110-116.

链接本文:

https://manu60.magtech.com.cn/biotech/CN/10.13523/j.cb.20140616        https://manu60.magtech.com.cn/biotech/CN/Y2014/V34/I06/110


[1] Vaeck M, Reynaerts A. Transgenic plants protected from insect attack. Nature,1987, 328 (2):33-37.

[2] Clive James.2012年全球生物技术/转基因作物商业化发展态势.中国生物工程杂志,2013, 33 (2):1-8. Clive James. Global status of commercialized biotech/GM crops,2012.China Biotechnology, 2013, 33 (2):1-8.

[3] Clive James. 2011年全球生物技术/转基因作物商业化发展态势.中国生物工程杂志,2012, 32 (1):1-14. Clive James. Global status of commercialized biotech/GM crops,2011. China Biotechnology, 2012, 32 (1):1-14.

[4] 刘定富,刘立清. 全球转基因棉花商业化进程.中国种业,2012,12: 11-13. Liu D F, Liu LQ. Commercialization progress of Transgenic Cotton in the global. China Seed Industry, 2012,12: 11-13.

[5] 陈健鹏.跨国种业公司成长的启示.农村工作通讯, 2012,4: 26-27. Chen S P. Enlightenment of the development of the multinational seed companies. Newsletter about Work in Rural Areas, 2012,4: 26-27.

[6] Peferon M. Progress and protects for field use of Bt. genes in crops. Trends in Biotechnology, 1997,15 (5):173-177.

[7] David A Fischhoff, Webster Groves, Frederick J Perlak, et al. Synthetic plant genes and method for preparation. US, US7741118, 2010-06-22.

[8] Joan C McPherson, Robert Kay. Method for enhanced expression of a DNA sequence of interest.US, US5424200,1995-06-13.

[9] Kim A Beazley, Kirk W, Jeanna R Hillyard, et al.Cotton event PV-GHBK04 (531) and compositions and methods for detection thereof.US,US7964348,2011-06-21.

[10] Fraley Robert T, Horsch Robert B, Rogers Stephen G.Chimeric genes for transforming plant cells using viral promoters.US, US5352605, 1994-10-04.

[11] Paul F Umbeck. Genetic engineering of cotton plants and lines.US,US5004863,1991-04-02.

[12] Scott A Huber, Creve Coeur, James K Roberts, et al.Cotton event MON15985 and compositions and methods for detection thereof.US, US7223907, 2011-06-21.

[13] S.A.胡伯, J.K.罗伯茨, Z.W.沙普利,等.棉花事件MON15985以及检测它的组合物和方法.中国, ZL 02802047.2. 2009-01-07. Scott A Huber, Creve Coeur, James K Roberts, et al.Cotton event MON15985 and compositions and methods for detection thereof.CN, ZL 02802047.2, 2009-01-07.

[14] 张欣欣. 跨国公司知识产权战略探析.税务与经济,2009,1:54-59. Zhang X X. Analysis of intellectual property rights strategy of transnational corporations. Taxation and Economy, 2009,1:54-59.

[15] 任静,刘丽军,宋敏.跨国公司在我国农业领域的技术锁定策略与对策研究.中国软科学,2012,1:39-46. Ren J, Liu L J, Song M. Technology locking strategy of transnational corporation in China's agriculture and China's countermeasures. China Soft Science Magazine, 2012,1:39-46.

[1] 梁晋刚,张旭冬,毕研哲,王颢潜,张秀杰. 转基因抗虫玉米发展现状与展望*[J]. 中国生物工程杂志, 2021, 41(6): 98-104.
[2] 何伟,祝蕾,刘欣泽,安学丽,万向元. 玉米遗传转化与商业化转基因玉米开发*[J]. 中国生物工程杂志, 2021, 41(12): 13-23.
[3] 梁振鑫,刘芳,张玮,刘庆友,李力. 抗p185 erb B2人鼠嵌合抗体ChAb26转基因小鼠乳腺生物反应器的制备与验证 *[J]. 中国生物工程杂志, 2019, 39(8): 40-51.
[4] 王友华,邹婉侬,柳小庆,王兆华,孙国庆. 全球转基因玉米专利信息分析与技术展望 *[J]. 中国生物工程杂志, 2019, 39(12): 83-94.
[5] 杨飞芸,杨天瑞,刘坤,崔爽,王瑞刚,李国婧. 异源表达CiRS基因拟南芥的黄酮代谢及抑菌能力研究 *[J]. 中国生物工程杂志, 2019, 39(11): 22-30.
[6] 曾强,孟秋成,邓力华,李锦江,于江辉,翁绿水,肖国樱. 抗草甘膦、抗螟虫水稻E1C608的鉴定和重要表型特征分析 *[J]. 中国生物工程杂志, 2019, 39(11): 31-38.
[7] 陈秀秀,吴成林,周丽君. 人源抗体制备及临床应用研究进展 *[J]. 中国生物工程杂志, 2019, 39(10): 90-96.
[8] 徐琳杰,刘培磊,李文龙,孙卓婧,宋贵文. 国际转基因标识制度变动趋势分析及对我国的启示 *[J]. 中国生物工程杂志, 2018, 38(9): 94-98.
[9] 韩明明,罗玉萍. 内源CD133 +细胞示踪小鼠模型的制备和鉴定 *[J]. 中国生物工程杂志, 2018, 38(6): 58-62.
[10] 周天盟,刘旭霞. 论预防原则在欧盟转基因生物监管中的困境与出路 *——基于意大利Fidenato案的分析[J]. 中国生物工程杂志, 2018, 38(6): 95-102.
[11] 姚民,朱淑华,李佛生,张士彦,唐琳. 异源表达AtCYSa基因烟草的耐盐和抗虫特性分析[J]. 中国生物工程杂志, 2018, 38(4): 8-16.
[12] 王嘉祯,姚伦广,王峰,阚云超,罗金萍,黄倩倩,段建平. 家蚕中肠特异启动子P56的克隆及活性分析 *[J]. 中国生物工程杂志, 2018, 38(2): 13-17.
[13] 王友华,蔡晶晶,杨明,张恬,任红梅,邹婉浓,孙国庆. 全球转基因大豆专利信息分析与技术展望[J]. 中国生物工程杂志, 2018, 38(2): 116-125.
[14] 崔帅,王作平,于江辉,肖国樱. 转基因水稻BPL9K-2事件特异性检测方法的建立 *[J]. 中国生物工程杂志, 2018, 38(11): 32-41.
[15] 刘旭霞, 张楠. 中美转基因作物种植管理制度比较[J]. 中国生物工程杂志, 2017, 37(8): 119-127.